Thermoplastic plastic cladding plant fiver base material and processing method thereof
A technology of thermoplastics and plant fibers, which is applied in the processing of floors, furniture boards, and decoration boards. It can solve the problems of poor wear resistance, waste of resources, and low wear resistance of boards, so as to solve poor wear resistance and improve adhesion. , the effect of stabilizing moisture content
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Embodiment 1
[0043] Example 1, the thermoplastic cladding plant fiber base material is obtained according to the following processing method: the first step is to heat the thermoplastic to 63°C to 430°C to be in a molten state; the second step is to cover the thermoplastic in a molten state On the surface of the plant fiber substrate, a pressure of 0.003MPa to 43MPa is applied to the surface of the plant fiber substrate covered with molten thermoplastic through the template of the press, and the molten thermoplastic penetrates into the plant under the pressure of the template The pores, pits and pores of the fiber substrate are filled, and the pores, pits and pores of the plant fiber substrate are filled. At the same time, the molten thermoplastic on the surface of the plant fiber substrate exerts pressure on the pressurized template. It adheres to the surface of the plant fiber substrate, and after cooling, it solidifies and forms on the surface of the plant fiber substrate. After demouldi...
Embodiment 2
[0044] Example 2, the thermoplastic cladding plant fiber base material is obtained according to the following processing method: the first step is to heat the thermoplastic to 63°C or 430°C to be in a molten state; the second step is to cover the thermoplastic in a molten state On the surface of the plant fiber substrate, a pressure of 0.003MPa or 43MPa is applied to the surface of the plant fiber substrate covered with molten thermoplastic through the template of the press, and the molten thermoplastic penetrates into the plant under the pressure of the template. The pores, pits and pores of the fiber substrate are filled, and the pores, pits and pores of the plant fiber substrate are filled. At the same time, the molten thermoplastic on the surface of the plant fiber substrate exerts pressure on the pressurized template. It adheres to the surface of the plant fiber substrate, and after cooling, it solidifies and forms on the surface of the plant fiber substrate. After demould...
Embodiment 3
[0046] Embodiment 3, as the improvement of embodiment 1 and embodiment 2, in the second step, the thermoplastics of molten state forms 0.02mm in the plant fiber base material after filling the pores, pits and pores of the plant fiber base material. A mixed layer with a thickness of up to 13.3mm. The mixed layer is filled with thermoplastics into the pores, pits and pores of the plant fiber substrate, and forms an irregular structure of thermoplastics and plant fiber substrates in the plant fiber substrate. Mutual adhesion layer. Due to the material form, processing method, density of the plant fiber substrate and the size and depth of the pores on the surface of the plant fiber substrate and the pores in the plant fiber substrate, the thickness and shape of the mixture are quite different. The thermoplastic protective layer and The adhesion (surface bonding strength) of the plant fiber substrate can be increased to above 1.35MPa.
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